CN218668133U - Vertical connecting piece for ceiling keel and connecting structure thereof - Google Patents

Vertical connecting piece for ceiling keel and connecting structure thereof Download PDF

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Publication number
CN218668133U
CN218668133U CN202023100943.1U CN202023100943U CN218668133U CN 218668133 U CN218668133 U CN 218668133U CN 202023100943 U CN202023100943 U CN 202023100943U CN 218668133 U CN218668133 U CN 218668133U
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keel
fixing holes
vertical
bottom plate
connecting piece
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CN202023100943.1U
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刘飞
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Shandong Jiding Decoration Technology Co ltd
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Shandong Jiding Decoration Technology Co ltd
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Abstract

The utility model discloses a furred ceiling is perpendicular connecting piece and connection structure for fossil fragments, including C shape cladding fossil fragments, it still includes perpendicular connecting piece, C shape cladding fossil fragments include first C shape cladding fossil fragments and second C shape cladding fossil fragments, perpendicular connecting piece includes the roof, the bottom plate, curb plate and grafting portion, roof and bottom plate are connected perpendicularly with the upper and lower both ends of curb plate with one side respectively, the roof, bottom plate and curb plate form the U-shaped groove, grafting portion includes two plugboards that are parallel to each other, two plugboards deviate from in the front and back both ends of roof and bottom plate opposite side with the curb plate respectively and are connected perpendicularly, the distance of roof and bottom plate and the high looks adaptation of C shape cladding fossil fragments, roof is gone into to the horizontal block of first C shape cladding fossil fragments, the U-shaped inslot that bottom plate and curb plate formed. The utility model provides a perpendicular connecting piece is integrated into one piece, consequently can guarantee that the bulk strength of connecting piece satisfies the furred ceiling demand, has solved the inconvenient problem of installing cladding keel and vertical fossil fragments additional in the great keel frame of span.

Description

Perpendicular connecting piece for ceiling keel and connecting structure thereof
Technical Field
The utility model relates to a furred ceiling fossil fragments technical field, especially a furred ceiling is perpendicular connecting piece and connection structure for fossil fragments.
Background
The ceiling keel is connected with the suspension rod, provides a mounting node for the surface cover panel and is a component which is opened and closed in the ceiling. The ceiling keel can be divided into a wood keel, profile steel or light steel keel and an aluminum alloy keel, and the light steel keel is widely applied nowadays, is generally widely applied to places such as hotels, waiting buildings, vehicle transportation stations, playgrounds, markets, factories, office buildings, old building reconstruction, indoor decoration setting, ceilings and the like, and has the advantages of short construction period, simple and convenient construction and the like because the ceiling keel has the effects of light weight, high strength, adaptability to water prevention, shock prevention, dust prevention, sound insulation, sound absorption, constant temperature and the like, and is widely loved by people.
In the light gauge steel furred ceiling, need install the stull additional and consolidate keel frame or when addding central air conditioning business turn over wind gap, because the span between the fossil fragments is great, inconvenient installation, consequently need add some cladding fossil fragments or vertical fossil fragments and be used for reducing the span in the long-span keel frame, and play and support fixed effect, current technical scheme generally cuts the transformation to original cladding fossil fragments end department, it is fixed to effectively laminate with cladding fossil fragments middle part in order to reach cladding fossil fragments end department, the cladding fossil fragments that will cut pass through self-tapping screw to be fixed on keel frame, this kind of mode need cut the end department of fossil fragments, consequently, it is very hard to waste time, additionally increased the cost of installation.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the problem, a furred ceiling is perpendicular connecting piece and connection structure for fossil fragments has been designed.
Realize above-mentioned purpose the technical scheme of the utility model be, a furred ceiling is perpendicular connecting piece and connection structure for fossil fragments, including C shape clad can fossil fragments, clad can fossil fragments still include perpendicular connecting piece, C shape clad can fossil fragments include first C shape clad can fossil fragments and second C shape clad can fossil fragments, perpendicular connecting piece includes roof, bottom plate, curb plate and grafting portion, roof and bottom plate respectively with both ends are connected perpendicularly about the curb plate is left, roof, bottom plate and curb plate form the U-shaped groove, grafting portion includes two plugboard that are parallel to each other, two the same end of plugboard respectively with both ends are connected around the curb plate right side, the distance of roof and bottom plate and the high looks adaptation of C shape clad can fossil fragments, the horizontal block of first C shape clad can fossil fragments is gone into the U-shaped inslot that roof, bottom plate and curb plate formed, two the width and the inside recess looks adaptation of height and C shape clad can fossil fragments of plugboard, grafting portion inserts in the recess of second C shape clad can fossil fragments, first C shape clad can fossil fragments and second C shape clad can be the state of being perpendicular.
As a further description of the utility model, this furred ceiling fossil fragments still include vertical keel with vertical connecting piece and connection structure, vertical keel with roof fixed connection, vertical keel with second C-shaped cladding fossil fragments are the vertical state.
As a further description of the present invention, a plurality of rows of first fixing holes are vertically disposed on the bottom surface of the C-shaped cladding keel, a plurality of second fixing holes are disposed on the bottom plate, the second fixing holes are adapted to the first fixing holes, and the bottom surface of the bottom plate and the C-shaped cladding keel passes through the first fixing holes and the second fixing holes to be fixedly connected.
As a further description of the present invention, the second fixing hole is a longitudinal long circular hole.
As the utility model discloses a further description, vertically seted up a plurality of third fixed orificess of being listed as on the vertical fossil fragments, seted up a plurality of fourth fixed orificess of being listed as on the roof, a plurality of be listed as the row interval of third fixed orifices and a plurality of fourth fixed orificess equals, roof and vertical fossil fragments pass third fixed orifices and fourth fixed orifices through the fastener and carry out fixed connection.
As the utility model discloses a further description, a plurality of columns the fourth fixed orifices is the matrix distribution, and the vertical hole distance of arbitrary adjacent two holes equals to be B value, a plurality of columns in arbitrary column fourth fixed orifices horizontal fixed orifices of a plurality of groups are constituteed to the third fixed orifices, and arbitrary horizontal fixed orifices of group vertically staggered arrangement, arbitrary group the vertical hole distance of arbitrary adjacent two holes in horizontal fixed orifices is less than B value, arbitrary group the vertical hole distance of the top hole in the horizontal fixed orifices and the vertical hole distance of the bottom hole also be less than or equal to B value.
As a further description of the present invention, the third fixing hole is N rows, the longitudinal distance between two vertical adjacent holes of any group of horizontal fixing holes is equal to the XB/N value, X is a positive integer, X is not less than 1 and not more than N-1, and the longitudinal distance between the uppermost hole and the lowermost hole of the group of horizontal fixing holes is (N-1) B/N value.
As a further description of the present invention, the vertical connecting member is integrally formed.
The beneficial effects are that:
1. the utility model inserts the inserting part of the vertical connecting piece into the groove at the end part of the cladding keel, the cladding keel is connected with the cladding keel, the cladding keel is only needed to be clamped between the top plate and the bottom plate of the vertical connecting piece, and then the bottom plate is riveted and fixed with the bottom surface of the cladding keel by the rivet, if the cladding keel is connected with the vertical keel, the vertical keel is only needed to be laminated on the long plate of the vertical connecting piece and then riveted and fixed by the rivet, therefore, the vertical connecting piece has strong universality, the installation is simple and convenient, and the rivet fixation is more stable;
2. the utility model provides a fixed orifices that sets up on perpendicular connecting piece bottom plate and the roof and the fixed orifices on the cladding keel bottom surface erect fossil fragments together phase-match, and the setting of fixed orifices can use the rivet to carry out fixed connection, has removed the process that the scene was punched from, has improved the efficiency of construction, and fix with rivet is also more firm than self-tapping screw in addition.
3. The vertical connecting piece provided by the utility model is integrated, so that the integral strength of the connecting piece can be ensured to meet the requirement of a suspended ceiling, and the problem that the covering keel and the vertical keel are inconvenient to be additionally arranged in a keel frame with larger span is solved;
4. the utility model discloses in a plurality of rows the fourth fixed orifices is the matrix distribution, and the vertical pitch-row of arbitrary adjacent two holes equals to be B value, a plurality of rows in any row of fourth fixed orifices the third fixed orifices includes the horizontal fixed orifices of a plurality of groups, and arbitrary horizontal fixed orifices of group vertically misplaces the range, the third fixed orifices is N row, and B value can be equallyd divide at fore-and-aft dislocation value to arbitrary horizontal fixed orifices of group. Therefore, when the columns of the third fixing holes are more, the number of the transverse fixing holes is more, the uniformly distributed B value is smaller, the adjusting precision is higher, the vertical keel and the top plate of the vertical connecting piece are fixed through the coincident holes, and the vertical keel and the vertical connecting piece can be adjusted with higher precision in relative position by the installation in the mode.
Drawings
Fig. 1 is a schematic view of the connection structure between the C-shaped facing keels of the present invention;
FIG. 2 is a schematic view of the structure of FIG. 1 from another perspective;
fig. 3 is a schematic view of the connection structure between the vertical keel and the C-shaped cladding keel of the present invention;
FIG. 4 is a schematic view of the structure from another perspective of FIG. 3;
fig. 5 is a schematic structural view of the vertical keel according to the present invention;
fig. 6 is a schematic plan view of the vertical connecting member according to the present invention;
fig. 7 is a schematic view of the structure from another view angle of fig. 5.
In the figure, 1, a vertical connecting piece; 11. a plug-in part; 111. a plugboard; 12. a side plate; 13. a base plate; 14. a top plate; 2. a vertical keel; 3. a C-shaped overlay keel; 31. a second C-shaped cladding keel; 32. a first C-shaped faced keel; 4. a first fixing hole; 5. a third fixing hole; 51. a transverse fixing hole; 6. a second fixing hole; 7. and a fourth fixing hole.
Detailed Description
First explain the utility model discloses a design original intention, in the great light gauge steel furred ceiling of span, need install the stull additional and consolidate the fossil fragments frame or add the method that generally adopts when central air conditioning business turn over wind gap is used for reducing the span with some cladding fossil fragments or vertical fossil fragments in the fossil fragments frame, and play the fixed effect of support, the method of adopting now generally cuts transformation to original cladding fossil fragments end department, it is fixed to carry out effective laminating with cladding fossil fragments middle part in order to reach cladding fossil fragments end department, cladding fossil fragments that will cut pass through self tapping screw to be fixed on the fossil fragments frame, but this kind of method is very hard and time consuming, also additionally increased the cost of installation simultaneously, consider this several points, the utility model provides a furred ceiling is with perpendicular connecting piece and connection structure thereof.
The utility model is described in detail with reference to the drawings, as shown in fig. 1-7, the utility model mainly comprises a traditional C-shaped cladding keel 3, a vertical connecting piece 1 and a vertical keel 2, the three pieces are the main structure of the utility model, wherein the vertical connecting piece 1 is the core structure of the utility model, and the C-shaped cladding keel 3 comprises a first C-shaped cladding keel 32 and a second C-shaped cladding keel 31 for supporting, and the inside of the C-shaped cladding keel is provided with a groove for connecting the vertical connecting piece 1; as shown in fig. 6-7, the vertical connecting member 1 is an integrally formed combined structure, and if it is subdivided, it includes a top plate 14, a bottom plate 13, a side plate 12 and an inserting portion 11, in order to facilitate the connection between the vertical connecting member 1 and the C-shaped cladding keel 3 and to make the connection more secure, we define the size and position of the inserting portion 11 formed by two inserting plates 111 parallel to each other, the width and height of the two inserting plates 111 are adapted to the inner groove of the C-shaped cladding keel, and the two inserting plates 111 are vertically connected with the front and rear ends of the same side of the side plate 12, referring to fig. 1-2, in the specific operation, the two inserting plates 111 of the inserting portion 11 are inserted into the groove of the second C-shaped cladding keel 31; in order to facilitate the connection between the vertical connecting piece 1 and the first C-shaped cladding keel 32, the top plate 14 and the bottom plate 13 are respectively and vertically connected with the upper end and the lower end of the side plate 12, which are away from the other side of the inserting part 11, and the three are combined to form a U-shaped groove, and the first C-shaped cladding keel 32 is transversely clamped in the U-shaped groove formed by the top plate 14, the bottom plate 13 and the side plate 12.
The first C-shaped cladding keel 32 and the second C-shaped cladding keel 31 are connected with the vertical connecting piece 1, and the structure is finally formed, wherein the first C-shaped cladding keel 32 and the second C-shaped cladding keel 31 are perpendicular to each other, but the simple clamping is not firm, so that a plurality of rows of first fixing holes 4 are longitudinally formed in the bottom surface of the C-shaped cladding keel 3, a plurality of second fixing holes 6 are formed in the bottom plate 13, the second fixing holes 6 are longitudinal long round holes, the positions of the second fixing holes 6 and the first fixing holes 4 are matched, the long round holes can be in other shapes such as round, oblate and the like, and the long round holes are convenient to adjust hole positions when the second C-shaped cladding keel 31 is installed and fixed, so that the installation is convenient and rapid; the bottom plate 13 and the bottom surface of the C-shaped cladding keel 3 are fixedly connected through the first fixing hole 4 and the second fixing hole 6 through fasteners in a common mode, the common mode is that the bottom plate is fixedly connected through rivets, the process of site punching is omitted, and the construction efficiency is effectively improved.
What has been described above is the connection between the C-shaped cladding keel 3 and the C-shaped cladding keel 3 by means of the vertical connector 1, and the manner of connection between the C-shaped cladding keel 3 and the vertical keel 2 will be explained below:
referring to fig. 3-5, the vertical keel 2 is fixedly connected with the top plate 14 of the vertical connector 1 through a fastener, a plurality of rows of third fixing holes 5 are longitudinally formed in the vertical keel 2, a plurality of rows of fourth fixing holes 7 are formed in the top plate 14 of the vertical connector 1, and the row spacing between the plurality of rows of third fixing holes 5 and the plurality of rows of fourth fixing holes 7 is equal, so that when the vertical keel 2 is installed and fixed, the third fixing holes 5 and the fourth fixing holes 7 can be overlapped, and a constructor can conveniently penetrate rivets into the third fixing holes 5 and the fourth fixing holes 7, so that the top plate 14 of the vertical connector 1 and the vertical keel 2 are fixedly connected, the second C-shaped cladding keel 31 is connected with the vertical connector 1 in the same manner, and in the final formed structure, the vertical keel 2 and the second C-shaped cladding keel 31 are in a vertical state.
The fourth fixing holes 7 and the third fixing holes 5 are arranged according to specific positions, wherein a plurality of rows of the fourth fixing holes 7 are distributed in a matrix manner, the longitudinal hole distances of any two adjacent holes in any row of the fourth fixing holes 7 are equal to a value B, a plurality of rows of the third fixing holes 5 form a plurality of groups of transverse fixing holes 51, any group of the transverse fixing holes 51 are longitudinally arranged in a staggered manner, and the value B is larger than the longitudinal hole distance of any two adjacent holes in any group of the transverse fixing holes 51 and is also larger than the longitudinal hole distance of the uppermost hole and the lowermost hole in any group of the transverse fixing holes 51; the third fixing holes 5 are in N rows, the longitudinal hole distances of two longitudinally adjacent holes of any group of the transverse fixing holes 51 are equal to each other and are XB/N values, X is a positive integer and is not less than 1 and not more than N-1, and the longitudinal hole distances of the uppermost hole and the lowermost hole of the group of the transverse fixing holes 51 are (N-1) B/N values, if X =1 is set, a horizontal line is drawn in the center of each hole of the group of the transverse mounting holes, and the distance between two adjacent horizontal lines is B/N, so that the longitudinal dislocation values of any group of the transverse fixing holes 51 are equally divided into the B values, the arrangement aims to ensure that when the number of the rows of the third fixing holes 5 is larger, the number of the transverse fixing holes 51 is larger, the equally divided B values are smaller, the adjustment precision is higher, and the vertical keels 2 and the top plate 14 of the vertical connecting piece 1 are fixed through the overlapped holes.
In the actual installation, the aforesaid this kind of mode of setting can realize the quick adjustment of 2 mounted positions of vertical keel usually, when a certain hole in a certain row of third fixed orifices 5 and a certain hole coincidence in a certain row of fourth fixed orifices 7, must exist one or more holes and the coincidence of fourth fixed orifices 7 in other rows of third fixed orifices 5, thereby can realize the micro-adjustment of millimeter level's hole site precision, the fixed of vertical keel 2 that makes is more firm, more stable, the installation is quicker, the installation time has been practiced thrift, work load when having reduced the furred ceiling to a certain extent, in addition when making vertical connection spare 1 and vertical keel 2, the distribution rule interchangeable setting of the third fixed orifices 5 on the fourth fixed orifices 7 on the vertical connection spare 1 and the vertical keel 2, also can reach foretell beneficial effect.
More than it is the utility model provides an application of perpendicular vertical connection spare 1 in the fossil fragments connection combination of two kinds of differences, constructor can select to use the installation in which combination according to actual demand, when guaranteeing that the bulk strength of perpendicular connection spare 1 satisfies the furred ceiling demand, the mounting means is also simpler, effectively solved the inconvenient problem of installing cladding keel and vertical keel 2 additional in the great keel frame of span, and fix with rivet is more firm than self tapping screw is fixed, can satisfy and install central air conditioning or other electrical equipment stability and intensity demand additional on cladding keel and the vertical keel 2 that install additional.
Above-mentioned technical scheme has only embodied the utility model discloses technical scheme's preferred technical scheme, some changes that this technical field's technical personnel probably made to some parts wherein have all embodied the utility model discloses a principle belongs to within the protection scope of the utility model.

Claims (8)

1. A vertical connecting piece (1) for a ceiling keel and a connecting structure thereof comprise a C-shaped cladding keel (3) and are characterized by further comprising the vertical connecting piece (1), wherein the C-shaped cladding keel (3) comprises a first C-shaped cladding keel (32) and a second C-shaped cladding keel (31), the vertical connecting piece (1) comprises a top plate (14), a bottom plate (13), a side plate (12) and an inserting part (11), the top plate (14) and the bottom plate (13) are respectively and vertically connected with the upper end and the lower end of the left side of the side plate (12), the top plate (14), the bottom plate (13) and the side plate (12) form a U-shaped groove, the inserting part (11) comprises two inserting plates (111) which are parallel to each other, the same ends of the two inserting plates (111) are respectively connected with the front end and the rear end of the right side of the side plate (12), the distance between the top plate (14) and the bottom plate (13) is matched with the height of the C-shaped cladding keel (3), the first C-shaped cladding keel (32) is transversely clamped into the top plate (14), the bottom plate (13) and the inner side plate (12) and the width of the inserting groove (31) is matched with the width of the second C-shaped cladding keel (31), the first C-shaped cladding keel (32) and the second C-shaped cladding keel (31) are in a vertical state.
2. The vertical connecting member (1) for the ceiling keel and the connecting structure thereof according to claim 1, further comprising a vertical keel (2), wherein the vertical keel (2) is fixedly connected with the top plate (14), and the vertical keel (2) and the second C-shaped cladding keel (31) are in a vertical state.
3. The vertical connecting piece (1) for the ceiling keel and the connecting structure thereof as claimed in claim 1, wherein a plurality of rows of first fixing holes (4) are longitudinally formed on the bottom surface of the C-shaped cladding keel (3), a plurality of second fixing holes (6) are formed on the bottom plate (13), the second fixing holes (6) are matched with the first fixing holes (4) in position, and the bottom plate (13) is fixedly connected with the bottom surface of the C-shaped cladding keel (3) by a fastener penetrating through the first fixing holes (4) and the second fixing holes (6).
4. The vertical connector (1) for a ceiling joist and the connection structure thereof as claimed in claim 3, wherein the second fixing hole (6) is a longitudinal oblong hole.
5. The vertical connecting piece (1) for the suspended ceiling keel and the connecting structure thereof as claimed in claim 2, wherein a plurality of columns of third fixing holes (5) are longitudinally formed in the vertical keel (2), a plurality of columns of fourth fixing holes (7) are formed in the top plate (14), the column intervals of the plurality of columns of third fixing holes (5) and the plurality of columns of fourth fixing holes (7) are equal, and the top plate (14) and the vertical keel (2) are fixedly connected by a fastener passing through the third fixing holes (5) and the fourth fixing holes (7).
6. The vertical connecting member (1) for the suspended ceiling keel and the connecting structure thereof according to claim 5, wherein a plurality of columns of the fourth fixing holes (7) are distributed in a matrix, the longitudinal hole distance between any two adjacent holes in any column of the fourth fixing holes (7) is equal to a value B, a plurality of columns of the third fixing holes (5) form a plurality of groups of transverse fixing holes (51), any group of the transverse fixing holes (51) are longitudinally arranged in a staggered manner, the longitudinal hole distance between any two adjacent holes in any group of the transverse fixing holes (51) is smaller than the value B, and the longitudinal hole distance between the uppermost hole and the lowermost hole in any group of the transverse fixing holes (51) is also smaller than or equal to the value B.
7. The vertical connecting member (1) for the suspended ceiling keel and the connecting structure thereof according to claim 6, wherein the third fixing holes (5) are N rows, the longitudinal hole distance of two longitudinally adjacent holes of any group of the transverse fixing holes (51) is equal to an XB/N value, X is a positive integer, X is more than or equal to 1 and less than or equal to N-1, and the longitudinal hole distance of the uppermost hole and the lowermost hole in the group of the transverse fixing holes (51) is (N-1) B/N value.
8. The vertical connecting member (1) for a ceiling runner and the connecting structure thereof according to any one of claims 1 to 7, wherein the vertical connecting member (1) is integrally formed.
CN202023100943.1U 2020-12-18 2020-12-18 Vertical connecting piece for ceiling keel and connecting structure thereof Active CN218668133U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023100943.1U CN218668133U (en) 2020-12-18 2020-12-18 Vertical connecting piece for ceiling keel and connecting structure thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023100943.1U CN218668133U (en) 2020-12-18 2020-12-18 Vertical connecting piece for ceiling keel and connecting structure thereof

Publications (1)

Publication Number Publication Date
CN218668133U true CN218668133U (en) 2023-03-21

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Application Number Title Priority Date Filing Date
CN202023100943.1U Active CN218668133U (en) 2020-12-18 2020-12-18 Vertical connecting piece for ceiling keel and connecting structure thereof

Country Status (1)

Country Link
CN (1) CN218668133U (en)

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